[1] MA Q M,GUO R X,ZHAO Z M,et al.Mechanical Properties of Concrete at High Temperature — A Review[J].Construction and Building Materials,2015,93:371-383.
[2]王海龙,俞秋佳,孙晓燕,等.高温作用后混凝土损伤与耐久性能评价[J].江苏大学学报:自然科学版,2014,35(2):238-242.
WANG Hai-long,YU Qiu-jia,SUN Xiao-yan,et al.Durability and Damage Evaluation of Concrete Subjected to High Temperature[J].Journal of Jiangsu University:Natural Science Edition,2014,35(2):238-242.
[3]秦 斌.海水海砂混凝土基本力学性能研究[J].混凝土,2019(2):90-91.
QIN Bin.Basic Mechanical Properties of Seawater and Sea Sand Concrete[J].Concrete,2019(2):90-91.
[4]崔 壮,秦拥军,许富威,等.沙漠砂混凝土研究现状[J].混凝土,2020(2):106-110.
CUI Zhuang,QIN Yong-jun,XU Fu-wei,et al.Research Status of Desert Sand Concrete[J].Concrete,2020(2):106-110.
[5]李志强,王国庆,杨 森,等.沙漠砂混凝土力学性能及应力-应变本构关系试验研究[J].应用力学学报,2019,36(5):1131-1137,1261.
LI Zhi-qiang,WANG Guo-qing,YANG Sen,et al.Experimental Study on Mechanical Properties and Stress-strain Constitutive Relations of Desert Sand Concrete[J].Chinese Journal of Applied Mechanics,2019,36(5):1131-1137,1261.
[6]李 波,周海龙,吕振国,等.高强机制砂混凝土工作性及力学性能的试验研究[J].硅酸盐通报,2020,39(6):1765-1771,1797.
LI Bo,ZHOU Hai-long,LYU Zhen-guo,et al.Experimental Study on Workability and Mechanical Properties of High Strength Manufactured Sand Concrete[J].Bulletin of the Chinese Ceramic Society,2020,39(6):1765-1771,1797.
[7]ZHANG G X,SONG J X,YANG J S,et al.Performance of Mortar and Concrete Made with a Fine Aggregate of Desert Sand[J].Building and Environment,2006,41(11):1478-1481.
[8]李北星,周明凯.石灰岩机制砂中石粉作掺合料对混凝土工作性和强度的影响[J].公路,2007(12):141-145.
LI Bei-xing,ZHOU Ming-kai.Effect of Quarry Waste Powder in Limestone Manufactured Sand as Mineral Admixture on Workability and Strength of Concretes[J].Highway,2007(12):141-145.
[9]陈正发,刘桂凤,秦彦龙,等.恶劣环境下机制砂混凝土的强度和耐久性能[J].建筑材料学报,2012,15(3):391-394.
CHEN Zheng-fa,LIU Gui-feng,QIN Yan-long,et al.Strength and Durability of Concrete with Manufactured-sand in Severe Environment[J].Journal of Building Materials,2012,15(3):391-394.
[10]赵顺波,苏延峰,李长永,等.机制砂再生粗骨料混凝土配筋柱偏心受压承载力研究[J].混凝土,2013(9):26-28.
ZHAO Shun-bo,SU Yan-feng,LI Chang-yong,et al.Research on Eccentric Compressive Resistance of Reinforced MSRAC Columns[J].Concrete,2013(9):26-28.
[11]陈正发,刘桂凤,徐建民.机制砂混凝土在高温后的强度和耐久性研究[J].混凝土,2011(10):46-48.
CHEN Zheng-fa,LIU Gui-feng,XU Jian-min.Study on the Strength and Durability of Concrete with Manufactured-sand Under Condition of High Temperature[J].Concrete,2011(10):46-48.
[12]齐锦程.掺机制砂高性能混凝土高温后强度及孔隙劣化试验[J].中国科技论文,2018,13(19):2219-2222.
QI Jin-cheng.Experimental Study on the Degradation of Strength and Pore of HPC with Added Manufactured Sand[J].China Sciencepaper,2018,13(19):2219-2222.
[13]柴松华.机制砂高性能混凝土高温后的力学性能试验研究及机理分析[D].太原:太原理工大学,2014.
CHAI Song-hua.Experimental Study and Mechanism Analysis on Mechanical Property of High Performance Concrete with Manufactured Sand After High Temperature[D].Taiyuan:Taiyuan University of Technology,2014.
[14]任雪振,韩 阳,张 彦.高温后机制砂混凝土与钢筋黏结性能试验研究[J].混凝土,2020(10):51-54,58.
REN Xue-zhen,HAN Yang,ZHANG Yan.Post-high-temperature Experimental Study on the Manufactured Sand Concrete and Rebar Bonding Performance[J].Concrete,2020(10):51-54,58.
[15]陈正发,秦彦龙,刘桂凤,等.高温后机制砂混凝土的本构关系试验研究[J].混凝土,2013(12):72-74,86.
CHEN Zheng-fa,QIN Yan-long,LIU Gui-feng,et al.Experimental Study on Constitutive Relation of Concrete with Manufactured-sand After High Temperatures[J].Concrete,2013(12):72-74,86.
[16]杨卓强,刘元珍.石粉掺量对机制砂高性能混凝土强度及耐久性能影响研究[J].混凝土,2018(7):69-71,75.
YANG Zhuo-qiang,LIU Yuan-zhen.Effect of Stone Powder Content on Strength and Durability of High Performance Concrete with Machine-made Sand[J].Concrete,2018(7):69-71,75.
[17]XIE K Z,BAI M Y,QING Z G,et al.Study on Durability of Manufactured Sand Based on Stone Powder Content[J].Science of Advanced Materials,2018,10(11):1608-1614.
[18]谢开仲,王红伟,肖 杰,等.石粉含量对机制砂混凝土力学性能影响试验[J].建筑科学与工程学报,2019,36(5):31-38.
XIE Kai-zhong,WANG Hong-wei,XIAO Jie,et al.Experiment on Influence of Stone Powder Content on Mechanical Properties of Manufactured Sand Concrete[J].Journal of Architecture and Civil Engineering,2019,36(5):31-38.
[19]雷 瑜,黄昌华,杨海成,等.砂岩石粉含量对中等强度等级机制砂混凝土性能的影响研究[J].建筑结构,2017,47(增1):950-953.
LEI Yu,HUANG Chang-hua,YANG Hai-cheng,et al.Research on the Effect of Sandstone Powder Content on the Properties for Medium-strength Sandstone Concrete[J].Building Structure,2017,47(S1):950-953.
[20]王 青,江 满,徐 港,等.机制砂石粉含量对泵送混凝土强度的影响[J].混凝土,2018(2):102-106.
WANG Qing,JIANG Man,XU Gang,et al.Effect of Mechanical Gravel Powder Content on Strength of Pumped Concrete[J].Concrete,2018(2):102-106.
[21]AN J,KIM S,NAM B H.Effect of Aggregate Mineralogy and Concrete Microstructure on Thermal Expansion and Strength Properties of Concrete[J].Applied Science,2017,7(12):1307.
[22]GUPTA L K,VYAS A K.Impact on Mechanical Properties of Cement Sand Mortar Containing Waste Granite Powder[J].Construction and Building Materials,2018,191:155-164.
[23]钱在兹,吴 慧.混凝土高温后的扫描电镜实验研究[J].福州大学学报:自然科学版,1996,24(增):34-38.
QIAN Zai-zi,WU Hui.Experimental Study on SEM of Concrete After High Temperature[J].Journal of Fuzhou University:Natural Science,1996,24(S):34-38.
[24]SHEN W G,LIU Y,WANG Z W,et al.Influence of Manufactured Sand's Characteristics on Its Concrete Performance[J].Construction and Building Materials,2018,172:574-583.
[25]YANG H F,LIANG D Y,DENG Z H,et al.Effect of Limestone Powder in Manufactured Sand on the Hydration Products and Microstructure of Recycled Aggregate Concrete[J].Construction and Building Materials,2018,188:1045-1049.
[26]吴 波.火灾后钢筋混凝土结构的力学性能[M].北京:科学出版社,2003.
WU Bo.Mechanical Properties of Reinforced Concrete Structures After Fire[M].Beijing:Science Press,2003.
[27]GALETAKIS M,RAKA S.Utilization of Limestone Dust for Artificial Stone Production:An Experimental Approach[J].Minerals Engineering,2004,17(2):355-357.
[28]范 波,吴 达,马文峰,等.石灰石粉对混凝土界面过渡区黏结强度的影响[J].非金属矿,2018,41(4):46-47.
FAN Bo,WU Da,MA Wen-feng,et al.Effect of Ground Limestone on Bonding Strength of Concrete Interfacial Transition Zone[J].Non-metallic Mines,2018,41(4):46-47.
[29]吕天启,赵国藩,林志伸,等.高温后静置混凝土的微观分析[J].建筑材料学报,2003,6(2):135-141.
LÜ Tian-qi,ZHAO Guo-fan,LIN Zhi-shen,et al.Microscopic Analysis of Long Standing Concrete After High Temperature[J].Journal of Building Materials,2003,6(2):135-141.
[30]万夫雄,赵鹏辉,连会杰,等.高温后再生混凝土强度与微观机理[J].混凝土,2017(1):52-55.
WAN Fu-xiong,ZHAO Peng-hui,LIAN Hui-jie,et al.Strength of Recycled Concrete After High Temperature and Its Microstructure Mechanism[J].Concrete,2017(1):52-55.
[1]赵卫平.基于ANSYS接触分析的粘结-滑移数值模拟[J].建筑科学与工程学报,2011,28(02):44.
ZHAO Wei-ping.Bond-slip Numerical Simulation Based on ANSYS Contact Analysis[J].Journal of Architecture and Civil Engineering,2011,28(03):44.
[2]肖建庄,黄运标,郑永朝.高温后再生混凝土的残余抗折强度[J].建筑科学与工程学报,2009,26(03):32.
XIAO Jian-zhuang,HUANG Yun-biao,ZHENG Yong-chao.Residual Flexural Strength of Recycled ConcreteAfter Elevated-temperatures[J].Journal of Architecture and Civil Engineering,2009,26(03):32.
[3]董毓利.火灾时钢筋混凝土板的承载力计算[J].建筑科学与工程学报,2009,26(04):14.
DONG Yu-li.Calculation of Bearing Capacity of RC Concrete Slabs in Fire[J].Journal of Architecture and Civil Engineering,2009,26(03):14.
[4]周长东,吕西林,金叶,等.火灾高温下玻璃纤维筋的力学性能研究[J].建筑科学与工程学报,2006,23(01):23.
ZHOU Chang-dong,LU Xi-lin,JIN Ye.Research on Mechanical Behavior of GFRP Bars in High Temperature[J].Journal of Architecture and Civil Engineering,2006,23(03):23.
[5]肖建庄,刘良林,董毓利,等.高性能混凝土高温爆裂研究进展[J].建筑科学与工程学报,2019,36(03):1.
XIAO Jian-zhuang,LIU Liang-lin,DONG Yu-li,et al.Progress of Study on Explosive Spalling of High Performance Concrete at Elevated Temperatures[J].Journal of Architecture and Civil Engineering,2019,36(03):1.
[6]张云国,陈婷婷,李 敏.高温后页岩轻骨料混凝土断裂特性[J].建筑科学与工程学报,2019,36(04):120.
ZHANG Yun-guo,CHEN Ting-ting,LI Min.Fracture Properties of Shale Lightweight Aggregate Concrete
After High Temperature[J].Journal of Architecture and Civil Engineering,2019,36(03):120.
[7]霍静思,杨鑫鑫,李 智.考虑初始荷载的火灾后RC柱抗震性能[J].建筑科学与工程学报,2019,36(05):21.
HUO jing-si,YANG Xin-xin,LI Zhi.Seismic Performance of Post-fire RC Columns with Pre-load[J].Journal of Architecture and Civil Engineering,2019,36(03):21.
[8]谢开仲,王红伟,肖 杰,等.石粉含量对机制砂混凝土力学性能影响试验[J].建筑科学与工程学报,2019,36(05):31.
XIE Kai-zhong,WANG Hong-wei,XIAO Jie,et al.Experiment on Influence of Stone Powder Content on Mechanical
Properties of Manufactured Sand Concrete[J].Journal of Architecture and Civil Engineering,2019,36(03):31.
[9]霍静思,郝柏青,李 智.考虑轴向约束的钢筋混凝土梁高温下
竖向推覆试验[J].建筑科学与工程学报,2020,37(01):41.[doi:10.19815/j.jace.2018.11069]
HUO Jing-si,HAO Bai-qing,LI Zhi.Vertical Push-down Tests of RC Beams at High Temperature
Considering Axial Restraint[J].Journal of Architecture and Civil Engineering,2020,37(03):41.[doi:10.19815/j.jace.2018.11069]
[10]谢开仲,刘振威,盖炳州,等.不同岩性的机制砂混凝土本构关系及力学性能[J].建筑科学与工程学报,2021,38(01):99.[doi:10.19815/j.jace.2020.05013]
XIE Kai-zhong,LIU Zhen-wei,GE Bing-zhou,et al.Constitutive Relationship and Mechanical Properties of Manufactured Sand Concrete with Different Rocks[J].Journal of Architecture and Civil Engineering,2021,38(03):99.[doi:10.19815/j.jace.2020.05013]